/usr/include/boost/date_time
NameSizeModeActions
gregorian/-0755rm
local_time/-0755rm
posix_time/-0755rm
adjust_functors.hpp54670644editdlrm
compiler_config.hpp56400644editdlrm
constrained_value.hpp42240644editdlrm
c_local_time_adjustor.hpp26310644editdlrm
c_time.hpp44960644editdlrm
date.hpp73570644editdlrm
date_clock_device.hpp22990644editdlrm
date_defs.hpp7010644editdlrm
date_duration.hpp46690644editdlrm
date_duration_types.hpp91860644editdlrm
date_facet.hpp293140644editdlrm
date_formatting.hpp42080644editdlrm
date_formatting_limited.hpp34610644editdlrm
date_formatting_locales.hpp67480644editdlrm
date_format_simple.hpp31280644editdlrm
date_generators.hpp165080644editdlrm
date_generator_formatter.hpp117150644editdlrm
date_generator_parser.hpp130640644editdlrm
date_iterator.hpp33050644editdlrm
date_names_put.hpp107540644editdlrm
date_parsing.hpp141460644editdlrm
dst_rules.hpp154010644editdlrm
dst_transition_generators.hpp22930644editdlrm
filetime_functions.hpp31630644editdlrm
find_match.hpp13550644editdlrm
format_date_parser.hpp239090644editdlrm
gregorian_calendar.hpp27140644editdlrm
gregorian_calendar.ipp79470644editdlrm
int_adapter.hpp144630644editdlrm
iso_format.hpp56400644editdlrm
locale_config.hpp12060644editdlrm
local_timezone_defs.hpp76180644editdlrm
local_time_adjustor.hpp85780644editdlrm
microsec_time_clock.hpp62570644editdlrm
parse_format_base.hpp9610644editdlrm
period.hpp119360644editdlrm
period_formatter.hpp72370644editdlrm
period_parser.hpp79320644editdlrm
special_defs.hpp6330644editdlrm
special_values_formatter.hpp36570644editdlrm
special_values_parser.hpp61610644editdlrm
strings_from_facet.hpp45050644editdlrm
string_convert.hpp10020644editdlrm
string_parse_tree.hpp84050644editdlrm
time.hpp67880644editdlrm
time_clock.hpp22450644editdlrm
time_defs.hpp9420644editdlrm
time_duration.hpp105690644editdlrm
time_facet.hpp589880644editdlrm
time_formatting_streams.hpp37520644editdlrm
time_iterator.hpp14380644editdlrm
time_parsing.hpp118460644editdlrm
time_resolution_traits.hpp67600644editdlrm
time_system_counted.hpp90510644editdlrm
time_system_split.hpp80770644editdlrm
time_zone_base.hpp37110644editdlrm
time_zone_names.hpp31030644editdlrm
tz_db_base.hpp159150644editdlrm
wrapping_int.hpp58240644editdlrm
year_month_day.hpp13750644editdlrm
Edit: /usr/include/boost/date_time/time_duration.hpp (10569B)
#ifndef DATE_TIME_TIME_DURATION_HPP___ #define DATE_TIME_TIME_DURATION_HPP___ /* Copyright (c) 2002,2003 CrystalClear Software, Inc. * Use, modification and distribution is subject to the * Boost Software License, Version 1.0. (See accompanying * file LICENSE_1_0.txt or http://www.boost.org/LICENSE_1_0.txt) * Author: Jeff Garland, Bart Garst * $Date$ */ #include #include #include #include #include #include #include #include namespace boost { namespace date_time { //! Represents some amount of elapsed time measure to a given resolution /*! This class represents a standard set of capabilities for all counted time durations. Time duration implementations should derive from this class passing their type as the first template parameter. This design allows the subclass duration types to provide custom construction policies or other custom features not provided here. @tparam T The subclass type @tparam rep_type The time resolution traits for this duration type. */ template class BOOST_SYMBOL_VISIBLE time_duration : private boost::less_than_comparable > /* dividable, addable, and subtractable operator templates * won't work with this class (MSVC++ 6.0). return type * from '+=' is different than expected return type * from '+'. multipliable probably wont work * either (haven't tried) */ { public: // A tag for type categorization. Can be used to detect Boost.DateTime duration types in generic code. typedef void _is_boost_date_time_duration; typedef T duration_type; //the subclass typedef rep_type traits_type; typedef typename rep_type::day_type day_type; typedef typename rep_type::hour_type hour_type; typedef typename rep_type::min_type min_type; typedef typename rep_type::sec_type sec_type; typedef typename rep_type::fractional_seconds_type fractional_seconds_type; typedef typename rep_type::tick_type tick_type; typedef typename rep_type::impl_type impl_type; BOOST_CXX14_CONSTEXPR time_duration() : ticks_(0) {} BOOST_CXX14_CONSTEXPR time_duration(hour_type hours_in, min_type minutes_in, sec_type seconds_in=0, fractional_seconds_type frac_sec_in = 0) : ticks_(rep_type::to_tick_count(hours_in,minutes_in,seconds_in,frac_sec_in)) {} //! Construct from special_values BOOST_CXX14_CONSTEXPR time_duration(special_values sv) : ticks_(impl_type::from_special(sv)) {} //! Returns smallest representable duration static BOOST_CXX14_CONSTEXPR duration_type unit() { return duration_type(0,0,0,1); } //! Return the number of ticks in a second static BOOST_CXX14_CONSTEXPR tick_type ticks_per_second() { return rep_type::res_adjust(); } //! Provide the resolution of this duration type static BOOST_CXX14_CONSTEXPR time_resolutions resolution() { return rep_type::resolution(); } //! Returns number of hours in the duration BOOST_CXX14_CONSTEXPR hour_type hours() const { return static_cast(ticks() / (3600*ticks_per_second())); } //! Returns normalized number of minutes BOOST_CXX14_CONSTEXPR min_type minutes() const { return static_cast((ticks() / (60*ticks_per_second())) % 60); } //! Returns normalized number of seconds (0..60) BOOST_CXX14_CONSTEXPR sec_type seconds() const { return static_cast((ticks()/ticks_per_second()) % 60); } //! Returns total number of seconds truncating any fractional seconds BOOST_CXX14_CONSTEXPR sec_type total_seconds() const { return static_cast(ticks() / ticks_per_second()); } //! Returns total number of milliseconds truncating any fractional seconds BOOST_CXX14_CONSTEXPR tick_type total_milliseconds() const { if (ticks_per_second() < 1000) { return ticks() * (static_cast(1000) / ticks_per_second()); } return ticks() / (ticks_per_second() / static_cast(1000)) ; } //! Returns total number of nanoseconds truncating any sub millisecond values BOOST_CXX14_CONSTEXPR tick_type total_nanoseconds() const { if (ticks_per_second() < 1000000000) { return ticks() * (static_cast(1000000000) / ticks_per_second()); } return ticks() / (ticks_per_second() / static_cast(1000000000)) ; } //! Returns total number of microseconds truncating any sub microsecond values BOOST_CXX14_CONSTEXPR tick_type total_microseconds() const { if (ticks_per_second() < 1000000) { return ticks() * (static_cast(1000000) / ticks_per_second()); } return ticks() / (ticks_per_second() / static_cast(1000000)) ; } //! Returns count of fractional seconds at given resolution BOOST_CXX14_CONSTEXPR fractional_seconds_type fractional_seconds() const { return (ticks() % ticks_per_second()); } //! Returns number of possible digits in fractional seconds static BOOST_CXX14_CONSTEXPR unsigned short num_fractional_digits() { return rep_type::num_fractional_digits(); } BOOST_CXX14_CONSTEXPR duration_type invert_sign() const { return duration_type(ticks_ * (-1)); } BOOST_CXX14_CONSTEXPR duration_type abs() const { if ( is_negative() ) { return invert_sign(); } return duration_type(ticks_); } BOOST_CONSTEXPR bool is_negative() const { return ticks_ < 0; } BOOST_CONSTEXPR bool is_zero() const { return ticks_ == 0; } BOOST_CONSTEXPR bool is_positive() const { return ticks_ > 0; } BOOST_CONSTEXPR bool operator<(const time_duration& rhs) const { return ticks_ < rhs.ticks_; } BOOST_CONSTEXPR bool operator==(const time_duration& rhs) const { return ticks_ == rhs.ticks_; } //! unary- Allows for time_duration td = -td1 BOOST_CONSTEXPR duration_type operator-()const { return duration_type(ticks_ * (-1)); } BOOST_CONSTEXPR duration_type operator-(const duration_type& d) const { return duration_type(ticks_ - d.ticks_); } BOOST_CONSTEXPR duration_type operator+(const duration_type& d) const { return duration_type(ticks_ + d.ticks_); } BOOST_CONSTEXPR duration_type operator/(int divisor) const { return duration_type(ticks_ / divisor); } BOOST_CXX14_CONSTEXPR duration_type operator-=(const duration_type& d) { ticks_ = ticks_ - d.ticks_; return duration_type(ticks_); } BOOST_CXX14_CONSTEXPR duration_type operator+=(const duration_type& d) { ticks_ = ticks_ + d.ticks_; return duration_type(ticks_); } //! Division operations on a duration with an integer. BOOST_CXX14_CONSTEXPR duration_type operator/=(int divisor) { ticks_ = ticks_ / divisor; return duration_type(ticks_); } //! Multiplication operations an a duration with an integer BOOST_CXX14_CONSTEXPR duration_type operator*(int rhs) const { return duration_type(ticks_ * rhs); } BOOST_CXX14_CONSTEXPR duration_type operator*=(int divisor) { ticks_ = ticks_ * divisor; return duration_type(ticks_); } BOOST_CXX14_CONSTEXPR tick_type ticks() const { return traits_type::as_number(ticks_); } //! Is ticks_ a special value? BOOST_CXX14_CONSTEXPR bool is_special()const { if(traits_type::is_adapted()) { return ticks_.is_special(); } else{ return false; } } //! Is duration pos-infinity BOOST_CXX14_CONSTEXPR bool is_pos_infinity()const { if(traits_type::is_adapted()) { return ticks_.is_pos_infinity(); } else{ return false; } } //! Is duration neg-infinity BOOST_CXX14_CONSTEXPR bool is_neg_infinity()const { if(traits_type::is_adapted()) { return ticks_.is_neg_infinity(); } else{ return false; } } //! Is duration not-a-date-time BOOST_CXX14_CONSTEXPR bool is_not_a_date_time()const { if(traits_type::is_adapted()) { return ticks_.is_nan(); } else{ return false; } } //! Used for special_values output BOOST_CONSTEXPR impl_type get_rep()const { return ticks_; } protected: BOOST_CXX14_CONSTEXPR explicit time_duration(impl_type in) : ticks_(in) {} impl_type ticks_; }; //! Template for instantiating derived adjusting durations /* These templates are designed to work with multiples of * 10 for frac_of_second and resolution adjustment */ template class BOOST_SYMBOL_VISIBLE subsecond_duration : public base_duration { public: typedef typename base_duration::impl_type impl_type; typedef typename base_duration::traits_type traits_type; private: // To avoid integer overflow we precompute the duration resolution conversion coefficient (ticket #3471) BOOST_STATIC_ASSERT_MSG((traits_type::ticks_per_second >= frac_of_second ? traits_type::ticks_per_second % frac_of_second : frac_of_second % traits_type::ticks_per_second) == 0,\ "The base duration resolution must be a multiple of the subsecond duration resolution"); BOOST_STATIC_CONSTANT(boost::int64_t, adjustment_ratio = (traits_type::ticks_per_second >= frac_of_second ? traits_type::ticks_per_second / frac_of_second : frac_of_second / traits_type::ticks_per_second)); public: // The argument (ss) must be an integral type template BOOST_CXX14_CONSTEXPR explicit subsecond_duration(T const& ss, typename boost::enable_if, void>::type* = BOOST_DATE_TIME_NULLPTR) : base_duration(impl_type(traits_type::ticks_per_second >= frac_of_second ? ss * adjustment_ratio : ss / adjustment_ratio)) { } }; } } //namespace date_time #endif